Romero-Ugalde Hector M, Le Rolle Virginie, Bonnet Jean-Luc, Henry Christine, Bel Alain, Mabo Philippe, Carrault Guy, Hernández Alfredo I
INSERM, U1099, Rennes, F-35000, France.
Université de Rennes 1, LTSI, Rennes, F-35000, France.
PLoS One. 2017 Oct 27;12(10):e0186068. doi: 10.1371/journal.pone.0186068. eCollection 2017.
Vagus nerve stimulation (VNS) is an established adjunctive therapy for pharmacologically refractory epilepsy and depression and is currently in active clinical research for other applications. In current clinical studies, VNS is delivered in an open-loop approach, where VNS parameters are defined during a manual titration phase. However, the physiological response to a given VNS configuration shows significant inter and intra-patient variability and may significantly evolve through time. VNS closed-loop approaches, allowing for the optimization of the therapy in an adaptive manner, may be necessary to improve efficacy while reducing side effects. This paper proposes a generic, closed-loop control VNS system that is able to optimize a number of VNS parameters in an adaptive fashion, in order to keep a control variable within a specified range. Although the proposed control method is completely generic, an example application using the cardiac beat to beat interval (RR) as control variable will be developed in this paper. The proposed controller is based on a state transition model (STM) that can be configured using a partially or a fully-connected architecture, different model orders and different state-transition algorithms. The controller is applied to the adaptive regulation of heart rate and evaluated on 6 sheep, for 13 different targets, using partially-connected STM with 10 states. Also, partially and fully-connected STM defined by 30 states were applied to 7 other sheep for the same 10 targets. Results illustrate the interest of the proposed fully-connected STM and the feasibility of integrating this control system into an implantable neuromodulator.
迷走神经刺激(VNS)是一种已确立的用于治疗药物难治性癫痫和抑郁症的辅助疗法,目前正积极开展针对其他应用的临床研究。在当前的临床研究中,VNS以开环方式进行,其中VNS参数在手动滴定阶段确定。然而,对给定VNS配置的生理反应在患者间和患者内均表现出显著差异,并且可能随时间显著变化。VNS闭环方法能够以自适应方式优化治疗,对于提高疗效同时减少副作用可能是必要的。本文提出了一种通用的闭环控制VNS系统,该系统能够以自适应方式优化多个VNS参数,以便将控制变量保持在指定范围内。尽管所提出的控制方法完全通用,但本文将开发一个以心跳间期(RR)作为控制变量的示例应用。所提出的控制器基于状态转换模型(STM),该模型可以使用部分或全连接架构、不同的模型阶数和不同的状态转换算法进行配置。该控制器应用于心率的自适应调节,并在6只绵羊上针对13个不同目标进行评估,使用具有10个状态的部分连接STM。此外,由30个状态定义的部分连接和全连接STM应用于另外7只绵羊的相同10个目标。结果说明了所提出的全连接STM的优势以及将该控制系统集成到植入式神经调节器中的可行性。